A cryostat (1) having a sealable housing (2) is described, the housing (2) enclosing a coolable cryostat chamber (3). For cooling the cryostat chamber (3), a refrigeration device (4), a control system (5) and a power supply (6) are provided. For cutting frozen samples, a microtome is arranged in the cryostat chamber (3). A temperature-controllable heating plate (7) is integrated into the housing (2) of the cryostat (1), outside the cryostat chamber (3).

Patent
   7240497
Priority
Nov 22 2003
Filed
Nov 12 2004
Issued
Jul 10 2007
Expiry
Sep 14 2025
Extension
306 days
Assg.orig
Entity
Large
7
12
all paid
1. A cryostat for containing a microtome in a temperature-controlled environment, the cryostat comprising:
a housing enclosing a cryostat chamber;
a refrigeration device communicating with the cryostat chamber for cooling the cryostat chamber;
a control system electrically connected to the refrigeration device;
a power supply electrically connected to the control system; and
a temperature controllable heating plate integrated into the housing outside the cryostat chamber.
2. The cryostat as defined in claim 1, wherein the heating plate is electrically connected to the control system.
3. The cryostat as defined in claim 2, further comprising a temperature sensor associated with the heating plate and electrically connected to the control system.
4. The cryostat as defined in claim 1, wherein the heating plate is sized to accommodate at least three standard specimen slides measuring 25 mm×75 mm.
5. The cryostat as defined in claim 1, further comprising a setting unit electrically connected to the control system for enabling a user to input a desired temperature of the heating plate to the control system.
6. The cryostat as defined in claim 1, wherein the heating plate is integrated into the housing of the cryostat at lectern height or at substantially lectern height.

This application claims priority of the German utility model application 203 18 094.1 filed Nov. 22, 2003 which is incorporated by reference herein.

The invention concerns a cryostat having a cryostat chamber in which a microtome for cutting frozen specimens is arranged.

Such cryostats are used in order to cut frozen specimens with a microtome for subsequent viewing with a microscope. The preparations to be cut are cooled to a specific predefined temperature, the temperatures in this context generally being between −10° C. and −50° C. In order to achieve these temperatures, an appropriately dimensioned refrigeration device, with which a control system and a central power supply are associated, is provided in the cryostat.

To ensure a constant temperature, the microtomes are arranged in complexly encapsulated cryostat chambers, and the latter are correspondingly cooled with the refrigeration device.

The frozen specimens are cut using a microtome arranged in the cryostat chamber, and then transferred from the knife or knife holder onto a specimen slide. It has proven advantageous in this context if the specimen slides are temperature-controlled or preheated in order to ensure reliable transfer of the cut specimen. If the specimen slides are too cold, the section does not thaw out on the specimen slide, and the danger exists that there will be no adhesion and the section will then fall off.

Heating plates are available commercially, but they are always embodied as a separate unit, have a corresponding space requirement, and must be arranged separately from the cryostat.

It is therefore the object of the present invention to improve the arrangement of the heating plate and thus guarantee ergonomic operation.

This object is achieved, according to the present invention, by way of a temperature-controllable heating plate integrated into the housing of the cryostat but outside the cryostat chamber. This guarantees that the heating plate is freely accessible when working at the cryostat, thus making work at the cryostat more ergonomic.

In an embodiment of the invention, the heating plate is electrically connected to the control system and/or to the power supply. The result of this is that the existing electrical devices can also be used by the heating plate, and complex additional control systems and/or power supplies can be omitted.

In a refinement of the invention, a temperature sensor that is electrically connected to the control system is associated with the heating plate. The result of this is that a predefined temperature is maintained in constant fashion at the heating plate.

In a refinement of the invention, the heating plate is arranged in the housing of the cryostat at lectern height (approx. 110 cm high). The result, in ergonomically favorable fashion, is that the specimen slides with the cut sections that are placed on the heating plate can be written on.

In a further embodiment of the invention, a setting unit for adjusting the temperature of the heating plate is associated with the control system. The result of this is that the heating plate temperature can be influenced not only by parameters permanently set at the control system, but only or additionally by way of a manual definition.

The invention will be explained in more detail with reference to FIG. 1, which shows, in schematic fashion, a cryostat formed in accordance with an exemplary embodiment of the present invention.

FIG. 1 is a view of a cryostat 1 having a housing 2 that encloses a cryostat chamber 3 in which a microtome (not depicted) is arranged. Cryostat chamber 3 is accessible to the user via a cover 14. A refrigeration device 4 is provided to cool cryostat chamber 3. A control system 5 and a central power supply 6 are arranged in housing 2 for the operation of cryostat 1. A heating plate 7 for temperature control and placement of specimen slides is integrated into housing 2 of cryostat 1. Heating plate 7 is connected via a first electrical connection 10 to the central power supply, and via a second electrical connection 12 to control system 5. A temperature sensor 8 for measuring the heating plate temperature is furthermore integrated into housing 2, and connected via an electrical connection 11 to control system 5. A setting unit 9, which is connected via an electrical connection 13 to control system 5, is provided for manual definition of a specific temperature of heating plate 7.

The desired temperature at heating plate 7 is preselected via setting unit 9. By way of control system 5, current is applied to the heating plate until the preselected temperature is measured by temperature sensor 8. The delivery of current to heating plate 7 is thus shut off by way of control system 5. When a lower temperature of heating plate 7 is measured by temperature sensor 8, the interruption in current delivery is canceled again.

Heating plate 7 is arranged in housing 2 of cryostat 1 at normal lectern height, i.e. approx. 110 cm, so that the specimen slides placed on heating plate 7 can be written on at an ergonomically favorable working height. In a preferred embodiment of the invention, the heating plate is sized to accommodate at least three standard glass specimen slides each measuring 25 mm×75 mm. This ensures not only that the specimen slide can be preheated before receiving the cut specimen, but also that the specimen slide together with the specimen can additionally be placed on the heating plate for specimen drying.

1 Cryostat

2 Housing

3 Cryostat chamber

4 Refrigeration device

5 Control system

6 Power supply

7 Heating plate

8 Temperature sensor

9 Setting unit

10 Electrical connection 6-7

11 Electrical connection 5-8

12 Electrical connection 5-7

13 Electrical connection 5-9

14 Cover

Dorenkamp, Claudia, Kuenkel, Stefan

Patent Priority Assignee Title
11187625, Dec 21 2011 SAKURA FINEIEK U.S.A., INC. Reciprocating microtome drive system
7846154, Dec 06 2004 Galil Medical Ltd. Gas-heated gas-cooled cryoprobe utilizing electrical heating and a single gas source
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Executed onAssignorAssigneeConveyanceFrameReelDoc
Oct 10 2004DORENKAMP, CLAUDIALeica Microsystems Nussloch GmbHASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS 0154260243 pdf
Oct 10 2004KUENKEL, STEFANLeica Microsystems Nussloch GmbHASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS 0154260243 pdf
Nov 12 2004Leica Microsystems Nussloch GmbH(assignment on the face of the patent)
Jul 19 2007Leica Microsystems Nussloch GmbHLeica Biosystems Nussloch GmbHCHANGE OF NAME SEE DOCUMENT FOR DETAILS 0199300254 pdf
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